1986•Physical Review LettersRequires access

Turbulent Relaxation to a Force-Free Field-Reversed State

J. P. Dahlburg, DAVID C. MONTGOMERY, Gary D. Doolen, Leaf Turner

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Abstract

The evolution of nonequilibrium initial conditions of an incompressible magnetohydrodynamic $Z$ pinch is described by a three-dimensional, pseudospectral numerical code. Magnetohydrodynamic turbulence develops in the resistive, nonviscous magnetofluid, resulting in the selective decay of the energy relative to the magnetic helicity, at Lundquist numbers of only a few hundred. An interior force-free region grows with time and achieves spontaneous reversal of the toroidal magnetic field at the wall, without the necessity of an external electric field.

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The evolution of nonequilibrium initial conditions of an incompressible magnetohydrodynamic $Z$ pinch is described by a three-dimensional, pseudospectral numerical code. Magnetohydrodynamic turbulence develops in the resistive, nonviscous magnetofluid, resulting in the selective decay of the energy relative to the magnetic helicity, at Lundquist numbers of only a few hundred. An interior force-free region grows with time and achieves spontaneous reversal of the toroidal magnetic field at the wall, without the necessity of an external electric field.

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Available abstract

The evolution of nonequilibrium initial conditions of an incompressible magnetohydrodynamic $Z$ pinch is described by a three-dimensional, pseudospectral numerical code. Magnetohydrodynamic turbulence develops in the resistive, nonviscous magnetofluid, resulting in the selective decay of the energy relative to the magnetic helicity, at Lundquist numbers of only a few hundred. An interior force-free region grows with time and achieves spontaneous reversal of the toroidal magnetic field at the wall, without the necessity of an external electric field.

Key concepts: Physics, Magnetohydrodynamic drive, Magnetic field, Magnetohydrodynamic turbulence, Helicity, Magnetohydrodynamics, Turbulence, Toroid

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